TPS5430 5V Module
This TPS5430DDA-based design is a step-down voltage regulator, converting a higher input voltage to a stable 5V output. Ideal for applications requiring a regulated 5V supply. #referenceDesign #Module #Sublayout #stepDown #voltageRegulator #5V #TPS5430 #TPS5430DDA #reusable #module #powermanagement #texas-instruments #sublayout
peakon28

1 Use

5 Forks

TPS62932DRLR
Buck Switching Regulator IC Positive Adjustable 0.8V 1 Output 2A SOT-583 #commonpartslibrary
peakon28

1 Fork

1 Star

Voltage Regulator SMPS 3.3V Out
Project Description: DC-DC Converter Voltage regulator Output Module This board is designed as a DC-DC converter output module to efficiently step down a higher input voltage (VBAT) to a regulated low-voltage output (e.g., 3.3V) for powering sensitive circuitry. The design leverages the RT8059GJ5 PWM step-down converter for high efficiency conversion over a wide input range. Key aspects of the design include: Efficient Voltage Regulation: Utilizing the RT8059GJ5 integrated converter to deliver a stable, low-noise 3.3V output. Optimized Passive Component Selection: Incorporation of well-suited inductors and capacitors to minimize output ripple and support necessary transient performance. Mechanical Robustness: Inclusion of PCB mounting holes for secure installation and a compact layout that balances electrical performance with manufacturability. Connectivity and Integration: Designed with dedicated power net portals and proper ground management to ensure reliable operation and ease of integration into larger systems. This module provides a reliable point-of-load voltage regulation solution intended for use in applications where board space, efficiency, and precise voltage control are critical. #DC-DCConverter #PCBDesign #Electronics #Innovation #Module
peakon28

1 Use

1 Fork

2 Stars

RP2040 Test
ARM® Cortex®-M0+ - Microcontroller IC 32-Bit Dual-Core 133MHz External Program Memory 56-QFN (7x7) Alternative MPN #SC0914(7) #SC0914(13) #RaspberryPi #Raspberry #Pi #RPi #Pico
peakon28

Tesla Vehicle Display System | AI Cost Optimization Tutorial [Example]
Learn how to optimize your project for cost with this Vehicle Display System project that was open sourced from the Tesla Roadster. Optimizing your BOM for cost can take forever to research component alternatives and understand the supply chain. Learn how to optimize for cost in seconds with Flux Copilot.
peakon28

Buck converter
This is a voltage regulator steps down a DC of up to 40V to 3.3V current 3A
peakon28

ESPRSSO32 Smart Scale AI Auto Layout [Example]
Learn how to use AI Auto Layout on this ESP32 Espresso Smart Scale! In one click you’ll see AI Auto Layout perform magic. Pay close attention to how we recommend creating rulesets, zones, and fanouts. By copying the setup in this example on your own project, you’ll have a fully routed board in no time!
peakon28